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Cellular responses and gene expression profiles of colonic Lgr5+ stem cells after low-dose/low-dose-rate radiation exposure

机译:低剂量/低剂量率辐射照射后结肠Lgr5 +干细胞的细胞应答和基因表达谱

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摘要

We previously found that high-dose-rate radiation induced a replenishment of the colonic Lgr5+ stem cell pool, whereas low-dose-rate radiation did not. To identify key molecules that determine the dose-rate effects on this stem cell pool, we harvested colonic Lgr5+ stem cells by cell sorting at 2 weeks after exposure to 1 Gy of high-dose-rate (30 Gy/h) or low-dose-rate (0.003 Gy/h) radiation and analyzed their gene expression profiles using RNA-Seq. We found that pathways related to DNA damage response, cell growth, cell differentiation and cell death were upregulated in Lgr5+ stem cells irradiated with high dose rates, whereas pathways related to apical junctions and extracellular signaling were upregulated in low-dose-rate–irradiated colonic Lgr5+ stem cells. Interestingly, biological events involving apical junctions are known to play an important role in the exclusion of transformed cells that are surrounded by normal epithelial cells through ‘cell competition’. We speculated that cell competition, through apical junctions and extracellular ligands, might contribute to the dose-rate effect on Lgr5+ cell replenishment. To understand this mechanism, we focused on 69 genes that were significantly upregulated in low-dose-rate–irradiated cells, which we named DREDGE (Dose-Rate Effect Determining GEnes). Based on these findings, we propose a possible mechanism underlying the dose-rate effect observed in the colonic stem cell pool.
机译:先前我们发现高剂量率辐射诱导结肠Lgr5 + 干细胞池的补充,而低剂量率辐射则不能。为了确定决定该干细胞池剂量率效应的关键分子,我们在暴露于1 Gy的高剂量率(30)后2周,通过细胞分选收集了结肠Lgr5 + 干细胞Gy / h)或低剂量率(0.003 Gy / h)辐射,并使用RNA-Seq分析其基因表达谱。我们发现,高剂量率照射的Lgr5 + 干细胞中与DNA损伤应答,细胞生长,细胞分化和细胞死亡相关的途径均被上调,而与根尖连接和细胞外信号转导相关的途径在被辐射后被上调。低剂量率辐照的结肠Lgr5 + 干细胞。有趣的是,众所周知,涉及顶端连接的生物学事件在通过“细胞竞争”排斥正常上皮细胞所包围的转化细胞中起着重要作用。我们推测,细胞竞争通过顶端连接和细胞外配体,可能对Lgr5 + 细胞补充具有剂量率效应。为了了解这种机制,我们集中研究了低剂量率照射的细胞中显着上调的69个基因,我们将其命名为DREDGE(剂量率效应决定基因)。基于这些发现,我们提出了在结肠干细胞库中观察到的剂量率效应的潜在机制。

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